用于细胞力学和疾病的原子力显微镜

Q3 Medicine
Neuroforum Pub Date : 2020-04-22 DOI:10.1515/nf-2020-0001
Sandra Pérez-Domínguez, Shruti G. Kulkarni, Carmela Rianna, M. Radmacher
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引用次数: 5

摘要

摘要原子力显微镜(AFM)是一种在生物物理学中广泛应用的强大技术,例如用于研究活细胞的形貌和细胞力学。细胞力学是一个非常有趣的细胞生物物理参数,因为它会因各种细胞过程而发生强烈变化,例如在细胞分裂、细胞运动、分化、衰老以及各种疾病期间。由于癌症是疾病机械特性变化的一个突出例子,机械指纹的概念已经发展起来,这使得区分健康细胞和患病细胞成为可能。在这篇文章中,我们报告了原子力显微镜对细胞力学的各种研究。我们将首先简要介绍AFM的原理和操作模式,然后报道AFM在细胞生物物理学领域的一些应用,如区分健康细胞和癌症细胞,以及区分处于不同恶性阶段的癌症细胞。总体而言,我们将证明AFM在研究癌症的生物物理学方面做出了重大贡献,机械指纹的概念可以在生物医学和医学诊断中找到广泛的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Atomic force microscopy for cell mechanics and diseases
Abstract Atomic Force Microscopy (AFM) is a powerful technique widely employed in biophysics, for instance to study topography of living cells and cell mechanics. Cell mechanics is a very interesting, biophysical parameter of cells, because it is strongly changed by various cellular processes, for example during cell division, cell movement, differentiation, aging, and also various diseases. Since cancer is a prominent example of changes in mechanical properties of diseases, the concept of the mechanical fingerprint has developed, which makes it possible to distinguish between healthy and diseased cells. In this article we report on various studies of cell mechanics with the AFM. We will first give a brief introduction on AFM principles and operational modes and then we will report on some applications of AFM in the field of cellular biophysics, like discriminating between healthy and cancer cells, as well as distinguishing cancer cells at different stages of malignancy. Overall, we will show that AFM has made a significant contribution in studying the biophysics of cancer and the concept of mechanical fingerprints could find a wide variety of applications in biomedicine and medical diagnostics.
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来源期刊
Neuroforum
Neuroforum NEUROSCIENCES-
CiteScore
1.70
自引率
0.00%
发文量
30
期刊介绍: Neuroforum publishes invited review articles from all areas in neuroscience. Readership includes besides basic and medical neuroscientists also journalists, practicing physicians, school teachers and students. Neuroforum reports on all topics in neuroscience – from molecules to the neuronal networks, from synapses to bioethics.
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